Bradshaw Marite, Tepp William H, Whitemarsh Regina C M, Pellett Sabine, Johnson Eric A
Department of Bacteriology, University of Wisconsin-Madison, Madison, Wisconsin, USA.
Department of Bacteriology, University of Wisconsin-Madison, Madison, Wisconsin, USA
Appl Environ Microbiol. 2014 Dec;80(23):7415-22. doi: 10.1128/AEM.01795-14. Epub 2014 Sep 19.
Clostridium botulinum subtype A4 neurotoxin (BoNT/A4) is naturally expressed in the dual-toxin-producing C. botulinum strain 657Ba at 100× lower titers than BoNT/B. In this study, we describe purification of recombinant BoNT/A4 (rBoNT/A4) expressed in a nonsporulating and nontoxigenic C. botulinum expression host strain. The rBoNT/A4 copurified with nontoxic toxin complex components provided in trans by the expression host and was proteolytically cleaved to the active dichain form. Activity of the recombinant BoNT/A4 in mice and in human neuronal cells was about 1,000-fold lower than that of BoNT/A1, and the recombinant BoNT/A4 was effectively neutralized by botulism heptavalent antitoxin. A previous report using recombinant truncated BoNT/A4 light chain (LC) expressed in Escherichia coli has indicated reduced stability and activity of BoNT/A4 LC compared to BoNT/A1 LC, which was surmounted by introduction of a single-amino-acid substitution, I264R. In order to determine whether this mutation would also affect the holotoxin activity of BoNT/A4, a recombinant full-length BoNT/A4 carrying this mutation as well as a second mutation predicted to increase solubility (L260F) was produced in the clostridial expression system. Comparative analyses of the in vitro, cellular, and in vivo activities of rBoNT/A4 and rBoNT/A4-L260F I264R showed 1,000-fold-lower activity than BoNT/A1 in both the mutated and nonmutated BoNT/A4. This indicates that these mutations do not alter the activity of BoNT/A4 holotoxin. In summary, a recombinant BoNT from a dual-toxin-producing strain was expressed and purified in an endogenous clostridial expression system, allowing analysis of this toxin.
A型肉毒杆菌A4亚型神经毒素(BoNT/A4)在产生双毒素的肉毒杆菌菌株657Ba中天然表达,其效价比BoNT/B低100倍。在本研究中,我们描述了在非产芽孢且无毒性的肉毒杆菌表达宿主菌株中表达的重组BoNT/A4(rBoNT/A4)的纯化过程。rBoNT/A4与表达宿主反式提供的无毒毒素复合成分共纯化,并被蛋白水解切割成活性双链形式。重组BoNT/A4在小鼠和人神经元细胞中的活性比BoNT/A1低约1000倍,并且重组BoNT/A4能被肉毒中毒七价抗毒素有效中和。之前一项使用在大肠杆菌中表达的重组截短型BoNT/A4轻链(LC)的报告表明,与BoNT/A1 LC相比,BoNT/A4 LC的稳定性和活性降低,通过引入单氨基酸取代I264R克服了这一问题。为了确定该突变是否也会影响BoNT/A4的全毒素活性,在梭菌表达系统中产生了携带该突变以及预测会增加溶解度的第二个突变(L260F)的重组全长BoNT/A4。对rBoNT/A4和rBoNT/A4-L260F I264R的体外、细胞和体内活性进行比较分析,结果显示,无论是突变型还是非突变型BoNT/A4,其活性都比BoNT/A1低1000倍。这表明这些突变不会改变BoNT/A4全毒素的活性。总之,从产生双毒素的菌株中获得的重组BoNT在梭菌内源性表达系统中得以表达和纯化,从而能够对该毒素进行分析。